首页> 外文会议>Personal, Indoor and Mobile Radio Communications, 2000. PIMRC 2000. The 11th IEEE International Symposium on >A predictive QoS routing scheme for broadband low Earth orbit satellite networks
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A predictive QoS routing scheme for broadband low Earth orbit satellite networks

机译:宽带低地球轨道卫星网络的预测QoS路由方案

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Low Earth orbit satellite networks can augment terrestrial wireless networks to provide global broadband services to users regardless of the users' locations. Delivering QoS guarantees to the users of LEO satellite networks is complicated since the footprints of the LEO satellites move as the satellites traverse their orbits, and thus, causing frequent user handovers between the satellites. Traffic on inter-satellite links of a particular satellite change as the user traffic served by the satellite changes with the satellite's mobility. The change in user traffic on the inter-satellite links may cause violation of QoS requirements of on-going calls. We propose a novel routing algorithm called the predictive routing protocol (PRP), that exploits the predictive nature of the LEO satellite topology to maximize the total number of users served by the system, while maintaining each user's QoS requirements. The PRP predicts the user traffic load on the inter-satellite links up to a short time in the future by using the deterministic knowledge of the LEO satellite topology, and user location information. The PRP determines multiple paths for a particular connection that effectively help avoid possible future bottlenecks as predicted by estimated future traffic on the inter-satellite links. The algorithm is compared with other non-predictive routing protocols such as IP routing by extensive simulations and it is shown that PRP can deliver deterministic QoS guarantees (such as delay jitter), without over-reserving channel bandwidth. An admission control curve has also been obtained which may be used to ensure that the desired QoS metrics may be guaranteed.
机译:低地球轨道卫星网络可以增强地面无线网络,为用户提供全球宽带服务,无论用户的位置如何。为Leo卫星网络的用户提供QoS保证是复杂的,因为Leo卫星在卫星遍历其轨道时移动,因此,导致卫星之间的频繁的用户切换。当卫星移动的用户流量随着卫星移动性而提供特定卫星变化的卫星间隙的流量。卫星间链路上的用户流量的变化可能导致违反拨打呼叫的QoS要求。我们提出了一种新颖的路由算法,称为预测路由协议(PRP),该算法利用LEO卫星拓扑的预测性质,以最大化系统服务的用户总数,同时保持每个用户的QoS要求。通过使用Leo卫星拓扑的确定性知识和用户位置信息,PRP将在未来的短时间内预测卫星间链路上的用户流量负载。 PRP为特定连接确定多个路径,以避免可能通过卫星间链路上估计的未来流量预测的可能的未来瓶颈。将算法与其他非预测路由协议进行比较,例如通过广泛的仿真等IP路由,并且显示PRP可以提供确定性QoS保证(例如延迟抖动),而不会过度保留信道带宽。还获得了一种准入控制曲线,其可用于确保可以保证所需的QoS度量。

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